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WAVE PROPAGATION IN LAYERED PIEZOELECTRIC RINGS WITH RECTANGULAR CROSS SECTIONS

机译:矩形截面的层状压电环中的波传播

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Wave propagation in multilayered piezoelectric structures has received much attention in past forty years. But the research objects of previous research works are almost only for semi-infinite structures and one-dimensional structures, i.e., structures with a finite dimension in only one direction, such as horizontally infinite flat plates and axially infinite hollow cylinders. This paper proposes a double orthogonal polynomial series approach to solve the wave propagation in a two-dimensional (2-D) layered piezoelectric structure, namely, a multilayered piezoelectric ring with a rectangular cross-section. Through numerical comparison with the available reference results for a purely elastic multilayered rectangular straight bar, the validity of the double polynomial series approach is illustrated. The dispersion curves and electric potential distributions of various layered piezoelectric rectangular rings with different material stacking directions, different polarization directions, different radius to thickness ratios, and different width to thickness ratios are calculated to reveal their wave propagation characteristics.
机译:在过去的四十年中,多层压电结构中的波传播受到了广泛关注。但是,先前研究工作的研究对象几乎仅针对半无限结构和一维结构,即仅在一个方向上具有有限尺寸的结构,例如水平无限平板和轴向无限空心圆柱体。本文提出了一种双正交多项式级数方法来解决二维(2-D)层状压电结构中的波传播问题,即具有矩形横截面的多层压电环。通过与纯弹性多层矩形直杆的可用参考结果进行数值比较,说明了双多项式级数方法的有效性。计算了不同材料堆积方向,不同极化方向,不同半径与厚度比,不同宽度与厚度比的各层状压电矩形环的色散曲线和电势分布,以揭示其波传播特性。

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